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Synthesis Of Nano-sized Antimony-doped Tin Oxide (ato) Particles Using A Dc Arc Plasma Jet

机译:直流电弧等离子体射流合成纳米级掺杂锑的氧化锡(ato)粒子

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Nano-sized antimony-doped tin oxide (ATO) particles were synthesized using DC arc plasma jet. The precursors SnCl_4 and SbCl_5 were injected into the plasma flame in the vapor phase. ATO powder could conveniently be synthesized without any other post-treatment in this study. To control the doping amount of antimony in the ATO particles, the Sb/Sn molar ratio was used as an operating variable. To study the effect of carrier gas on the particle size, argon and oxygen gases were used. The results of XRD and TGA show that all Sb ions penetrated the SnO_2 lattice to substitute Sn ions. With the increased SbCl_5 concentration in source material, the Sb doping level was also increased. The size of the particles synthesized using the argon carrier gas was much smaller than that of the particles prepared using the oxygen carrier gas. For the argon gas, PSA results and SEM images reveal that the average particle size was 19 nm. However, for the oxygen gas, the average particle size was 31 nm.
机译:使用直流电弧等离子体射流合成了纳米级掺杂锑的氧化锡(ATO)颗粒。将前体SnCl_4和SbCl_5以气相注入到等离子体火焰中。本研究无需任何其他后处理即可方便地合成ATO粉末。为了控制ATO颗粒中锑的掺杂量,将Sb / Sn摩尔比用作操作变量。为了研究载气对粒径的影响,使用了氩气和氧气。 XRD和TGA的结果表明,所有的Sb离子都渗透到SnO_2晶格中,取代了Sn离子。随着源材料中SbCl_5浓度的增加,Sb掺杂水平也增加。使用氩气载气合成的颗粒的尺寸比使用氧气载气制备的颗粒的尺寸小得多。对于氩气,PSA结果和SEM图像显示平均粒径为19 nm。但是,氧气的平均粒径为31nm。

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